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Published on: October 16, 2016
Dysregulated Notch Signaling in the Airway Epithelium of Children with Wheeze
Thomas Iosifidis1,2,3, Erika N Sutanto1,3, Samuel T Montgomery1
1Wal-yan Respiratory Research Centre, Telethon Kids Institute, Perth, WA 6009, Australia.
Insights
Notch pathway dysregulation in pediatric wheeze impacts airway epithelial repair. Lower NOTCH2 and higher JAG1 levels in children with wheeze correlate with defective wound healing, suggesting a role in asthma development.
Area of Science:
- Respiratory medicine
- Cell biology
- Developmental biology
Background:
- Airway epithelial repair defects are key in pediatric wheeze.
- Notch pathway dysregulation is implicated in chronic asthma.
- The role of Notch in young children with wheeze, especially during repair, remains unclear.
Purpose of the Study:
- To investigate Notch pathway dysregulation in primary airway epithelial cells (pAEC) from children with wheeze.
- To determine if Notch contributes to defective airway epithelial repair in pediatric wheeze.
Main Methods:
- Isolated pAEC from children with and without wheeze.
- Assessed Notch receptor and ligand expression (mRNA and protein).
- Studied Notch function during in vitro epithelial repair assays.
Main Results:
- pAEC from children with wheeze showed significantly lower NOTCH2 and higher JAG1 mRNA levels.
- These expression changes persisted in vitro and affected repair kinetics.
- Notch inhibition impaired repair in healthy pAEC; NOTCH2 overexpression did not rescue repair in wheeze pAEC.
Conclusions:
- The Notch pathway is crucial for airway epithelial wound repair in both health and disease.
- Dysregulation of Notch signaling, specifically reduced NOTCH2 and increased JAG1, may contribute to defective repair in pediatric wheeze.
- These findings suggest a potential role for Notch pathway alterations in the development of asthma.
Abstract:
The airway epithelium of children with wheeze is characterized by defective repair that contributes to disease pathobiology. Dysregulation of developmental processes controlled by Notch has been identified in chronic asthma. However, its role in airway epithelial cells of young children with wheeze, particularly during repair, is yet to be determined. We hypothesized that Notch is dysregulated in primary airway epithelial cells (pAEC) of children with wheeze contributing to defective repair. This study investigated transcriptional and protein expression and function of Notch in pAEC isolated from children with and without wheeze. Primary AEC of children with and without wheeze were found to express all known Notch receptors and ligands, although pAEC from children with wheeze expressed significantly lower NOTCH2 (10-fold, p = 0.004) and higher JAG1 (3.5-fold, p = 0.002) mRNA levels. These dysregulations were maintained in vitro and cultures from children with wheeze displayed altered kinetics of both NOTCH2 and JAG1 expression during repair. Following Notch signaling inhibition, pAEC from children without wheeze failed to repair (wound closure rate of 76.9 ± 3.2%). Overexpression of NOTCH2 in pAEC from children with wheeze failed to rescue epithelial repair following wounding. This study illustrates the involvement of the Notch pathway in airway epithelial wound repair in health and disease, where its dysregulation may contribute to asthma development.
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